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Compression fittings

Type: UG1, UG4

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Specify the various parameters of the product for enquiry
Product's properties:
Model
Diameter of thermowell D [mm]
Process thread G
Material
Sealing material
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Application

 

  • Easy installation of temperature sensors in measuring point

 

Features

 

  • High quality
  • Metric, cylinder and NPT threads
  • Production according to customer's requirement also possible


Description


TERMOAPARATURA WROCŁAW supplies high quality compression fittings suitable for installation of temperature sensors in measuring point.

Compression fittings consists of three parts: body with process thread (metric or NPT), olive and compression screw/nut. Body and compression screw/nut are made of stainless steel. Olive made of stainless steel is forceful and resist up to 700ºC at typical pressure.

Standard versions of the compression fittings provides gas-tight connection up to 10 MPa (100 bar) with steel olives.

 

Sealing olives

 

Sealing olives

 

Compression fitting allows simple adaptation to the required insertion length at the installation point.

Material: stainless steel
Sealing ring material: stainless steel or teflon

Stainless steel olives can be adjusted once, after unscrewing, sliding along the sheath is no longer possible. Max. temperature at process connection +700°C

Teflon olives can be adjusted several times, after unscrewing, repeated sliding along the sheath is still possible. Max. temperature at process connection +200°C

  • Description
  • Application

     

    • Easy installation of temperature sensors in measuring point

     

    Features

     

    • High quality
    • Metric, cylinder and NPT threads
    • Production according to customer's requirement also possible


    Description


    TERMOAPARATURA WROCŁAW supplies high quality compression fittings suitable for installation of temperature sensors in measuring point.

    Compression fittings consists of three parts: body with process thread (metric or NPT), olive and compression screw/nut. Body and compression screw/nut are made of stainless steel. Olive made of stainless steel is forceful and resist up to 700ºC at typical pressure.

    Standard versions of the compression fittings provides gas-tight connection up to 10 MPa (100 bar) with steel olives.

     

    Sealing olives

     

    Sealing olives

     

    Compression fitting allows simple adaptation to the required insertion length at the installation point.

    Material: stainless steel
    Sealing ring material: stainless steel or teflon

    Stainless steel olives can be adjusted once, after unscrewing, sliding along the sheath is no longer possible. Max. temperature at process connection +700°C

    Teflon olives can be adjusted several times, after unscrewing, repeated sliding along the sheath is still possible. Max. temperature at process connection +200°C

  • Documents
Kalkulator
Unit converter

RTDs and TCs
characteristic calculator

Resistance thermometers

Thermocouples

Cold Junction Compensation = °C

Calculate value of resistance to temperature
(values according to ITS-90 scale)

R = Ω  T = 0 °C

Calculate value of temperature to resistance
(values according to ITS-90 scale)

T = °C R = 0 Ω

Limit values for the calculator

-200 °C - 850 °C

18,52 Ω - 390,48 Ω

Cold Junction Compensation = °C

Calculate value of resistance to temperature
(values according to ITS-90 scale)

R = Ω  T = 0 °C

Calculate value of temperature to resistance
(values according to ITS-90 scale)

T = °C R = 0 Ω

Limit values for the calculator

-60 °C - 250 °C

69,52 Ω - 289,16 Ω

Cold Junction Compensation = °C

Calculate value of thermoelectric emf to temperature

E = mV T = 0 °C

Calculate value of temperature to thermoelectric emf

T = °C  E = 0 mV

Limit values for the calculator

-210 °C - 1200 °C

-8,095 mV - 69,553 mV

Cold Junction Compensation = °C

Calculate value of thermoelectric emf to temperature

E = mV T = 0 °C

Calculate value of temperature to thermoelectric emf

T = °C  E = 0 mV

Limit values for the calculator

-270 °C - 1372 °C

-6,458 mV - 54,886 mV

Cold Junction Compensation = °C

Calculate value of thermoelectric emf to temperature

E = mV T = 0 °C

Calculate value of temperature to thermoelectric emf

T = °C  E = 0 mV

Limit values for the calculator

-270 °C - 1300 °C

-4,345 mV - 47,513 mV

Cold Junction Compensation = °C

Calculate value of thermoelectric emf to temperature

E = mV T = 0 °C

Calculate value of temperature to thermoelectric emf

T = °C  E = 0 mV

Limit values for the calculator

-270 °C - 1000 °C

-9,835 mV - 76,373 mV

Cold Junction Compensation = °C

Calculate value of thermoelectric emf to temperature

E = mV T = 0 °C

Calculate value of temperature to thermoelectric emf

T = °C  E = 0 mV

Limit values for the calculator

-270 °C - 400 °C

-6,258 mV - 20,872 mV

Cold Junction Compensation = °C

Calculate value of thermoelectric emf to temperature

E = mV T = 0 °C

Calculate value of temperature to thermoelectric emf

T = °C  E = 0 mV

Limit values for the calculator

-50 °C - 1768.1 °C

-0,226 mV - 21,103 mV

Cold Junction Compensation = °C

Calculate value of thermoelectric emf to temperature

E = mV T = 0 °C

Calculate value of temperature to thermoelectric emf

T = °C  E = 0 mV

Limit values for the calculator

-50 °C - 1768.1 °C

-0,236 mV - 18,694 mV

Cold Junction Compensation = °C

Calculate value of thermoelectric emf to temperature

E = mV T = 0 °C

Calculate value of temperature to thermoelectric emf

T = °C  E = 0 mV

Limit values for the calculator

0°C - 1820 °C

-0,003 mV - 13,820 mV

Pomoc. Instrukcja użytkownika.

Unit
converter
RTDs and TCs
characteristic calculator